Kabir Md Shahinur, Yamashita Daisuke, Noor Rashed, Yamada Mamoru
Department of Biological Chemistry, Faculty of Agriculture, Yamaguchi University, Yamaguchi, Japan.
J Mol Microbiol Biotechnol. 2004;8(3):189-94. doi: 10.1159/000085791.
The sigmaE regulon has been shown to perform a novel function that causes dead-cell lysis specific to the early stationary phase in addition to its well-known role in the extracytoplasmic stress response in Escherichia coli. Here, the effect of sigmaS as a general stress-responsive sigma factor on sigmaE-directed cell lysis was investigated. The lysis phenomena were observed in both rpoS mutant and parental strains constitutively expressing active sigmaE, but the former lysis occurred at a relatively early stage compared to the latter. Based on these results and experiments with hydrogen peroxide, we propose that some stresses generate living but non-culturable cells, which are subject to sigmaE-directed cell lysis.
在大肠杆菌中,除了其在胞质外应激反应中的众所周知的作用外,σE调节子还被证明具有一种新功能,即导致特定于稳定期早期的死细胞裂解。在此,研究了作为一般应激反应性σ因子的σS对σE介导的细胞裂解的影响。在组成型表达活性σE的rpoS突变体和亲本菌株中均观察到裂解现象,但前者的裂解发生时间比后者相对较早。基于这些结果以及用过氧化氢进行的实验,我们提出某些应激会产生活的但不可培养的细胞,这些细胞会受到σE介导的细胞裂解作用。